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Investigation of ethanol infiltration into demineralized dentin collagen fibrils using molecular dynamics simulations
- Publication Year :
- 2016
-
Abstract
- The purpose of this study is to investigate the interaction of neat ethanol with bound and non-bound water in completely demineralized dentin that is fully hydrated, using molecular dynamics (MD) simulation method. The key to creating ideal resin-dentin bonds is the removal of residual free water layers and its replacement by ethanol solvent in which resin monomers are soluble, using the ethanol wet-bonding technique. The test null hypotheses were that ethanol cannot remove any collagen-bound water, and that ethanol cannot infiltrate into the spacing between collagen triple helix due to narrow interlayer spacing. Collagen fibrillar structures of overlap and gap regions were constructed by aligning the collagen triple helix of infinite length in hexagonal packing. Three layers of the water molecules were specified as the layers of 0.15-0.22 nm, 0.22-0.43 nm and 0.43-0.63 nm from collagen atoms by investigating the water distribution surrounding collagen molecules. Our simulation results show that ethanol molecules infiltrated into the intermolecular spacing in the gap region, which increased due to the lateral shrinkage of the collagen structures in contact with ethanol solution, while there was no ethanol infiltration observed in the overlap region. Infiltrated ethanol molecules in the gap region removed residual water molecules via modifying mostly the third water layer (50% decrease), which would be considered as a loosely-bound water layer. The first and second hydration layers, which would be considered as tightly bound water layers, were not removed by the ethanol molecules, thus maintaining the helical structures of the collagen molecules.
- Subjects :
- Materials science
Collagen helix
Biomedical Engineering
02 engineering and technology
Molecular Dynamics Simulation
Biochemistry
Biomaterials
03 medical and health sciences
chemistry.chemical_compound
Molecular dynamics
0302 clinical medicine
Dentin
medicine
Molecule
Bound water
Humans
Composite material
Molecular Biology
Ethanol
Intermolecular force
030206 dentistry
General Medicine
021001 nanoscience & nanotechnology
Biomaterial
Solvent
medicine.anatomical_structure
Monomer
Chemical engineering
chemistry
Collagen
Dentin matrix
0210 nano-technology
Gap region
Human
Biotechnology
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....e1b04c4d27b98921f9a22c5d6fbf290b